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温度和激发密度对CdZnTe量子点中载流子动力学的影响。

Influence of temperature and excitation density on carrier dynamics in CdZnTe quantum dots.

作者信息

Man Minh Tan, Lee Hong Seok

机构信息

Laboratory of Advanced Materials and Natural Resources, Institute for Advanced Study in Technology, Ton Duc Thang University, Ho Chi Minh City, Vietnam.

Faculty of Applied Sciences, Ton Duc Thang University, Ho Chi Minh City, Vietnam.

出版信息

Sci Rep. 2025 Jul 1;15(1):21454. doi: 10.1038/s41598-025-07292-z.

Abstract

This study investigates the carrier dynamics of self-assembled CdZnTe quantum dots (QDs) using time-resolved photoluminescence measurements, specifically focusing on the effects of temperature and excitation density. Thermally activated transitions with a localization energy of approximately 8 meV are observed at low temperatures, shedding light on the quantum dynamical trajectories of carriers within the QDs. Our results demonstrate that quantum confinement influences both exciton-acoustic phonon and exciton-longitudinal optical (LO) phonon interactions, even under resonant conditions where the average occupancy is less than one electron-hole pair per dot. Multi-phonon absorption processes, particularly those involving LO phonons with energies around 19.2 meV, are identified as key contributors to carrier dynamics, alongside Auger recombination at high excitation densities. The Auger recombination coefficient (C) confirms the critical role of phonon-assisted mechanisms in Auger processes. These findings deepen our understanding of the optical behavior of CdZnTe QDs and provide valuable guidance for optimizing their applications in electronic and optoelectronic devices.

摘要

本研究利用时间分辨光致发光测量研究了自组装CdZnTe量子点(QDs)的载流子动力学,特别关注温度和激发密度的影响。在低温下观察到具有约8 meV局域能量的热激活跃迁,这揭示了量子点内载流子的量子动力学轨迹。我们的结果表明,即使在平均占有率小于每个量子点一个电子-空穴对的共振条件下,量子限域也会影响激子-声学声子和激子-纵向光学(LO)声子相互作用。多声子吸收过程,特别是那些涉及能量约为19.2 meV的LO声子的过程,被确定为载流子动力学的关键贡献者,同时在高激发密度下俄歇复合也起作用。俄歇复合系数(C)证实了声子辅助机制在俄歇过程中的关键作用。这些发现加深了我们对CdZnTe量子点光学行为的理解,并为优化其在电子和光电器件中的应用提供了有价值的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6caf/12214648/469b2de311a3/41598_2025_7292_Fig1_HTML.jpg

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